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Effect of contact force and velocity on copper sliding contact under inductive arcing

机译:接触力和速度对感应电弧作用下铜滑动接触的影响

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摘要

In order to improve the reliability of sliding copper contacts, we have studied the impact of wear and electrical parameters for multiple sliding cycles under inductive loads which produce arcs. Their performance has been evaluated by measuring voltage drop fluctuations and contact resistance stability during sliding for the cases where lubricants were used and for dry contacts. We have examined their relation with sliding speed, contact force and current during electrical sliding contact operations. Experiments were conducted using a mix sliding-separation contact bench. The test voltage was 14V; the inductive load was 10mH; the range current, 1-30A, the sliding velocity range 1-6cm/s and the force range was 1-8N.Combined effects of mechanical and electrical parameters on sliding electrical contacts damages are confirmed.
机译:为了提高滑动铜触点的可靠性,我们研究了在产生电弧的感性负载下,多个滑动循环的磨损和电气参数的影响。对于使用润滑剂和干式接触的情况,通过测量滑动过程中的电压降波动和接触电阻稳定性来评估其性能。我们已经检查了它们在电滑动接触操作中与滑动速度,接触力和电流的关系。使用混合滑动分离接触台进行实验。测试电压为14V;感性负载为10mH;电流范围为1-30A,滑动速度范围为1-6cm / s,作用力范围为1-8N。确定了机械和电气参数对滑动电触点损坏的综合影响。

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